Planar-Goubau-line components for terahertz applications
Doktorsavhandling, 2022
This thesis presents the development of PGL technology and components for terahertz frequencies. It developed design strategies to maximise the power efficiency, using electrically-thin substrates, which drastically drop radiation losses compared to thick substrates. The first PGL calibration standards were developed, which de-embeds the transition needed to excite the propagation mode and sets the calibration plane along the line, allowing the direct characterisation of PGL components. This work also presents several PGL components with a straightforward design procedure, including a stopband filter based on capacitively-coupled λ/2 resonators, an impedance-matched load based on an exponentially-tapered corrugated line, and a power divider based on capacitive-gap coupled lines to a standing wave in the input port. Finally, the PGL was integrated with a microfluidic channel to measure changes in the complex refractive index of a high-loss aqueous sample (water/isopropyl alcohol) as the first step toward a biological sensor.
planar Goubau line
Through-Reflect-Line (TRL) calibration
stopband filter
on-wafer measurements
vector network analyzers (VNA)
silicon membrane
power divider
Impedance-matched load
terahertz spectroscopy
microfluidic channels
Författare
Juan Cabello Sánchez
Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik
On-Chip Characterization of High-Loss Liquids Between 750 and 1100 GHz
IEEE Transactions on Terahertz Science and Technology,;Vol. 11(2021)p. 113-116
Artikel i vetenskaplig tidskrift
Transmission Loss in Coplanar Waveguide and Planar Goubau Line between 0.75 THz and 1.1 THz
International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz,;(2018)p. 1-2
Paper i proceeding
Multiline TRL Calibration Standards for S-parameter Measurement of Planar Goubau Lines from 0.75 THz to 1.1 THz
IEEE MTT-S International Microwave Symposium Digest,;Vol. 2018-June(2018)p. 879-882
Paper i proceeding
Capacitively-coupled resonators for terahertz planar-Goubau-line filters
IEEE Transactions on Terahertz Science and Technology,;Vol. 13(2023)p. 58-66
Artikel i vetenskaplig tidskrift
A Corrugated Planar-Goubau-Line Termination for Terahertz Waves
IEEE Microwave and Wireless Technology Letters,;Vol. 33(2023)p. 643-646
Artikel i vetenskaplig tidskrift
Styrkeområden
Informations- och kommunikationsteknik
Infrastruktur
Kollberglaboratoriet
Nanotekniklaboratoriet
Ämneskategorier
Elektroteknik och elektronik
Annan elektroteknik och elektronik
ISBN
978-91-7905-722-0
Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie: 5188
Utgivare
Chalmers
Kollektorn lecture room, Kemivägen 9, MC2-huset
Opponent: Professor Andrea Neto, Microelectronics department, Delft University of Technology